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首页> 外文期刊>Nanotechnology >Dose and energy dependence of mechanical properties of focused electron-beam-induced pillar deposits from Cu(C5HF6O2)2
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Dose and energy dependence of mechanical properties of focused electron-beam-induced pillar deposits from Cu(C5HF6O2)2

机译:Cu(C5HF6O2)2聚焦电子束诱导的柱沉积物力学性能的剂量和能量依赖性

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Bending and vibration tests performed inside a scanning electron microscope were used to mechanically characterize high aspect pillars grown by focused electron-beam- (FEB) induced deposition from the precursor Cu(C5HF6O2)2. Supported by finite element (FE) analysis the Young’s modulus was determined from load–deflection measurements using cantilever-based force sensing and the material density from additional resonance vibration analysis. The pillar material consisted of a carbonaceous (C-, O-, F-, H-containing) matrix which embeds 5–10 at.% Cu deposited at 5 and 20 keV primary electron energy and 100 pA beam current, depending on primary electron energy. The Young’s moduli of the FEB deposits increased from 17 ± 6 to 25 ± 8 GPa with increasing electron dose. The density of the carbonaceous matrix shows a dependence on the primary electron energy: 1.2 ± 0.3 g cm3 (5 keV) and 2.2 ± 0.5 g cm3 (20 keV). At a given primary energy a correlation with the irradiation dose is found. Quality factors determined from the phase relation at resonance of the fundamental pillar vibration mode were in the range of 150–600 and correlated to the deposited irradiation energy.
机译:扫描电子显微镜内部进行的弯曲和振动测试被用来机械表征高纵横比的柱子,该柱子是由聚焦电子束(FEB)诱导从前体Cu(C5HF6O2)2沉积而形成的。在有限元(FE)分析的支持下,杨氏模量是使用基于悬臂的力感测通过载荷-挠度测量确定的,而材料密度则是通过附加共振振动分析确定的。支柱材料由含碳(含C,O,F,H的基体)组成,该基体嵌入5-10 at。%的铜,该铜以5和20 keV的一次电子能量和100 pA的束流(取决于一次电子)沉积能源。随着电子剂量的增加,FEB沉积物的杨氏模量从17±6 GPa增加到25±8 GPa。碳质基质的密度取决于一次电子能量:1.2±0.3 g cm3(5 keV)和2.2±0.5 g cm3(20 keV)。在给定的一次能量下,发现与辐射剂量的相关性。由基本柱振动模式共振时的相位关系确定的品质因数在150-600范围内,并且与沉积的辐射能量相关。

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